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Two Dimensional Propagation of Displacement Mechanomyographic Signal

机译:位移机电工程图信号的二维传播

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摘要

Skeletal muscle consists of large numbers of motor units, each of which fires independently during voluntary contraction. The myoelectric signal which is recorded on the skin surface, namely a surface electromyogram (sEMG), is a time-related and spatial aggregate of the action potentials of these motor units. The sEMG indicates the input information for muscle contraction when the skeletal muscle is regarded as a system function. On the other hand, Mechanomyographic signal (MMG) is a skin surface vibration caused by muscle contraction and recorded by an accelerometer, a microphone, a displacement transducer, and other devices. The MMG directly reflects the activity of muscle contraction. But MMG's two-dimensional generation mechanism is still not clarified in detail, because the simultaneous multipoint measurement procedure and analytic technology of mechanomyographic signal have been insufficient. In this study, the displacement MMGs were recorded at 21 measuring points within 2×6 cm by using the displacement transducer, and MMG maps were described, while the motor points of the biceps brachii were electrically stimulated. The spatial propagation of twitch waveform of d-MMG was also discussed. As a result, it was clarified that the waveform amplitude decreased with propagation along the longitudinal axis of muscle fiber and it was estimated that the propagation velocity was 5-8m/s. But the positional relation of the axis of muscle fibers and measuring points affected the amplitude of propagation velocity.
机译:骨骼肌由大量运动单元组成,在自愿收缩期间,每个运动单元都会独立发动。记录在皮肤表面上的肌电信号,即表面肌电图(sEMG),是这些电机单元动作电位的时间相关和空间聚集。 sEMG表示当骨骼肌被视为系统功能时肌肉收缩的输入信息。另一方面,机械X射线照相信号(MMG)是由肌肉收缩引起的皮肤表面振动,并由加速度计,麦克风,位移传感器和其他设备记录。 MMG直接反映了肌肉的收缩活动。但是,MMG的二维生成机制仍然不明确,因为机电成像信号的同时多点测量程序和分析技术还不够。在这项研究中,通过使用位移传感器在2×6 cm内的21个测量点上记录了位移MMG,并绘制了MMG图,同时电刺激了肱二头肌的运动点。还讨论了d-MMG抽搐波形的空间传播。结果表明,波形振幅随着沿着肌纤维的纵轴的传播而降低,据估计传播速度为5〜8m / s。但是,肌肉纤维轴和测量点的位置关系影响了传播速度的幅度。

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